Studies into Additive Manufacturing for In-Space Manufacturing
Seiten
2016
SAE International (Verlag)
978-0-7680-8373-6 (ISBN)
SAE International (Verlag)
978-0-7680-8373-6 (ISBN)
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Presents a series of interconnected papers that explore lessons learned in processing of recycled thermoplastic filaments; the criticality of process control on the print process; the effects of orientation angles and print parameters on mechanical behaviour; microstructural analysis; and case studies of tools included in the spacecraft's toolbox.
Additive manufacturing (AM) for space exploration has become a growing opportunity as long-range space missions evolve. In partnership with the National Space Grant Foundation and NASA, students from the University of Wisconsin-Milwaukee participated in the 2014-15 X-Hab Academic Innovation Challenge, with participants tasked with developing new AM solutions that would be recyclable with minimal loss in mechanical properties. The teams investigated materials, characterization, testing, modeling, and tool development, including the ability to employ reusable carbon-fiber tension ties. The tools developed show that it is possible to employ thermoplastic polymer materials fabricated using AM together with reusable and flexible high-performance carbon-fiber-based composite ties. The AM-printed part is completely recyclable. The carbon-fiber composite ties are repurposed into new structural configurations without loss in properties. The results of this project are now published by SAE International.
Studies into Additive Manufacturing for In-Space Manufacturing is a series of interconnected papers that explore:
Lessons learned in processing of recycled thermoplastic filaments
The criticality of process control on the print process
The effects of orientation angles and print parameters on mechanical behavior
Microstructural analysis
Case studies of tools included in the spacecraft’s toolbox
Additive manufacturing (AM) for space exploration has become a growing opportunity as long-range space missions evolve. In partnership with the National Space Grant Foundation and NASA, students from the University of Wisconsin-Milwaukee participated in the 2014-15 X-Hab Academic Innovation Challenge, with participants tasked with developing new AM solutions that would be recyclable with minimal loss in mechanical properties. The teams investigated materials, characterization, testing, modeling, and tool development, including the ability to employ reusable carbon-fiber tension ties. The tools developed show that it is possible to employ thermoplastic polymer materials fabricated using AM together with reusable and flexible high-performance carbon-fiber-based composite ties. The AM-printed part is completely recyclable. The carbon-fiber composite ties are repurposed into new structural configurations without loss in properties. The results of this project are now published by SAE International.
Studies into Additive Manufacturing for In-Space Manufacturing is a series of interconnected papers that explore:
Lessons learned in processing of recycled thermoplastic filaments
The criticality of process control on the print process
The effects of orientation angles and print parameters on mechanical behavior
Microstructural analysis
Case studies of tools included in the spacecraft’s toolbox
Erscheinungsdatum | 20.01.2017 |
---|---|
Verlagsort | Warrendale |
Sprache | englisch |
Maße | 152 x 229 mm |
Themenwelt | Informatik ► Grafik / Design ► Digitale Bildverarbeitung |
Technik ► Fahrzeugbau / Schiffbau | |
Technik ► Luft- / Raumfahrttechnik | |
ISBN-10 | 0-7680-8373-7 / 0768083737 |
ISBN-13 | 978-0-7680-8373-6 / 9780768083736 |
Zustand | Neuware |
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